Institute of Pharmaceutical Chemistry, Philipps University of Marburg, Marburg, Germany.
Department of Virology, Paul-Ehrlich-Institut, Federal Institute for Vaccines and Biomedicines, Langen, Germany.
Arch Pharm (Weinheim). 2024 Sep;357(9):e2400250. doi: 10.1002/ardp.202400250. Epub 2024 May 29.
Three new series of macrocyclic active site-directed inhibitors of the Zika virus (ZIKV) NS2B-NS3 protease were synthesized. First, attempts were made to replace the basic P3 lysine residue of our previously described inhibitors with uncharged and more hydrophobic residues. This provided numerous compounds with inhibition constants between 30 and 50 nM. A stronger reduction of the inhibitory potency was observed when the P2 lysine was replaced by neutral residues, all of these inhibitors possess K values >1 µM. However, it is possible to replace the P2 lysine with the less basic 3-aminomethylphenylalanine, which provides a similarly potent inhibitor of the ZIKV protease (K = 2.69 nM). Crystal structure investigations showed that the P2 benzylamine structure forms comparable interactions with the protease as lysine. Twelve additional structures of these inhibitors in complex with the protease were determined, which explain many, but not all, SAR data obtained in this study. All individual modifications in the P2 or P3 position resulted in inhibitors with low antiviral efficacy in cell culture. Therefore, a third inhibitor series with combined modifications was synthesized; all of them contain a more hydrophobic d-cyclohexylalanine in the linker segment. At a concentration of 40 µM, two of these compounds possess similar antiviral potency as ribavirin at 100 µM. Due to their reliable crystallization in complex with the ZIKV protease, these cyclic compounds are very well suited for a rational structure-based development of improved inhibitors.
我们合成了三个新的 Zika 病毒(ZIKV)NS2B-NS3 蛋白酶的大环活性位点定向抑制剂系列。首先,我们尝试用不带电荷且疏水性更强的残基取代先前描述的抑制剂中的碱性 P3 赖氨酸残基。这提供了许多具有 30 到 50 nM 之间抑制常数的化合物。当 P2 赖氨酸被中性残基取代时,观察到抑制效力更强的降低,所有这些抑制剂的 K 值均大于 1 µM。然而,用碱性较弱的 3-氨基甲基苯丙氨酸替代 P2 赖氨酸是可能的,这提供了一种同样有效的 ZIKV 蛋白酶抑制剂(K = 2.69 nM)。晶体结构研究表明,P2 苄基胺结构与蛋白酶形成可比较的相互作用与赖氨酸相同。确定了这些抑制剂与蛋白酶的另外十二个结构,这解释了在本研究中获得的许多,但不是全部的 SAR 数据。在 P2 或 P3 位置的所有单独修饰都导致在细胞培养中具有低抗病毒功效的抑制剂。因此,合成了具有组合修饰的第三个抑制剂系列;它们都在连接片段中含有更疏水的 d-环己基丙氨酸。在 40 µM 的浓度下,其中两种化合物在 100 µM 时具有与利巴韦林相似的抗病毒效力。由于它们与 ZIKV 蛋白酶的可靠结晶,这些环状化合物非常适合基于结构的合理抑制剂的改进开发。